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Adaptive TDMA-based MAC protocol in energy harvesting wireless body area network for mobile health

机译:基于自适应TDMA的MAC协议在能量收集无线体积网络中的移动健康

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This paper investigates the problem of link scheduling in a single-hop energy harvesting wireless body area network (EH-WBANs) where sensor devices's energy harvesting rates and data rates are spatially heterogeneous and temporally variant. To maximize the channel utilization with the lifetime operation, an adaptive TDMA-based protocol (AT-MAC) is proposed, which is suitable for communication in an EH-WBAN for remote monitoring of physiological signals. In this protocol, a duty cycle can be dynamically adjusted to maintain the harvested energy amount, which is always greater than power consumption. Also, a novel time-slot allocation algorithm is designed to automatically adjust duty cycle with various data traffic and harvesting rates. This algorithm is decomposed into two sub-processes: predistribution of time-slot and redistribution of time-slot. The former process takes the information of energy harvesting rates into account, regardless of the rates varying in a nondeterministic manner and among various sensor nodes. For the latter process, the number of distributed time slots will be further adjusted to cope with data traffic of spatially heterogeneousness. Simulation results demonstrate the proposed protocal is a promising candidate for realizing the lifetime operation in EH-WBANs.
机译:本文调查了在单跳能量收集无线体积网络(EH-WBANS)中的链路调度的问题,其中传感器设备的能量收集率和数据速率在空间异质和时间变化。为了使频道利用率最大化利用寿命操作,提出了一种基于自适应TDMA的协议(AT-MAC),其适用于EH-WBAN中的通信,以远程监测生理信号。在该协议中,可以动态调整占空比以维持收获的能量,总是大于功耗。此外,设计了一种新的时隙分配算法,用于自动调整具有各种数据流量和收获速率的占空比。该算法分解为两个子进程:时间槽预分析并重新分配时隙。前一个过程考虑了能量收集率的信息,无论以非目标化方式还是各种传感器节点之间的速率。对于后一过程,将进一步调整分布式时隙的数量以应对空间异质性的数据流量。仿真结果证明所提出的Protocal是实现EH-WBANS中的寿命操作的有希望的候选者。

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